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Rains, Stephanie; Whitworth, Brooke A. – Science Teacher, 2018
Alternative farming techniques are often more efficient and conserve resources more effectively than conventional farming, which can harm the environment with pesticides and synthetic fertilizers (Pimental 2005). To learn the theory, application, and related science concepts of sustainable farming techniques, students can collaborate to create an…
Descriptors: Agricultural Production, Conservation (Environment), Hazardous Materials, Scientific Concepts
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Bauer, Petra – Biochemistry and Molecular Biology Education, 2016
The presented research hypothesis-driven laboratory exercise teaches advanced undergraduate students state of the art methods and thinking in an integrated molecular physiology context. Students understand the theoretical background of iron acquisition in the model plant "Arabidopsis thaliana." They design a flowchart summarizing the key…
Descriptors: Plants (Botany), Undergraduate Students, Molecular Biology, Physiology
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Millham, Rosemary A. – Science Teacher, 2012
Allowing students to create their own investigations and experiments to test hypotheses and answer essential questions is crucial to actively involving students in learning. It also provides them with opportunities to develop critical thinking and process skills. In this article, the authors explore a process called "BIDDI" ("Brainstorm,…
Descriptors: Science Instruction, Teaching Methods, Science Experiments, Thinking Skills
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Johnson, Sue – School Science Review, 2012
The EU as a context for science lessons may be given scant attention but EU decision-making is a vital factor in everyday life. Lessons on the emergence of soil science with Charles Darwin's simple scientific experiments can be linked with competence through action, inclusion and argumentations in science lessons. Decisions about an EU Soil…
Descriptors: Soil Science, Foreign Countries, Scientific Concepts, Sustainable Development
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Yarwood, Stephanie A.; Sulzman, Elizabeth W. – Journal of Natural Resources and Life Sciences Education, 2008
High diversity of microorganisms in the soil matrix has been the focus of extensive research in the fields of soil biology and microbial ecology, and is a key concept that students in the environmental or biological sciences should understand. Two activities to demonstrate diversity and highlight the challenges faced in studying soil microbial…
Descriptors: Microbiology, Teaching Methods, Science Instruction, Soil Science
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Butters, Greg; Bandaranayake, Wije – Journal of Natural Resources and Life Sciences Education, 1993
Presents the general theory to explain chemical movement in soil. Describes classroom demonstrations with visually stimulating results that show the effects of soil structure, soil texture, soil pH, and soluble organic matter on that movement. (MDH)
Descriptors: Biological Sciences, Demonstrations (Educational), Environmental Education, Higher Education
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Randler, Christoph; Hulde, Madeleine – Research in Science & Technological Education, 2007
This study focused on differences between teacher-centred and learner-centred experiments in soil ecology. After a pilot study, we selected three experiments simple enough to be carried out by pupils even with little experience in self-determined learning and hands-on practice. The sample comprised 123 fifth and sixth graders from a middle school…
Descriptors: Grade 6, Ecology, Middle Schools, Hands on Science
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Turski, Mark P. – Science Activities, 1988
Describes a lab investigation designed to introduce students to soil compaction and help them to learn to design and adapt procedures that scientists use when they plan and conduct controlled investigations. Provided are objectives, a list of materials, procedures, and a sample student handout. (CW)
Descriptors: Earth Science, Laboratory Procedures, Science Activities, Science Education
Ohio State Univ., Columbus. Agricultural Curriculum Materials Service. – 1990
This packet contains three science learning activities that can be used in agricultural education courses. The activities cover these topics: (1) determining the effects of soil particle size on capillary action; (2) measuring levels of eroded soil particles in streams; and (3) determining the effects of soil cover and texture on surface erosion.…
Descriptors: Agricultural Education, Classroom Techniques, Higher Education, Integrated Curriculum
Stocklmayer, Sue – 1982
The Zimbabwe Secondary School Science Project (ZIM-SCI) developed student study guides, corresponding teaching guides, and science kits for a low-cost science course which could be taught during the first 2 years of secondary school without the aid of qualified teachers and conventional laboratories. This ZIM-SCI study guide presents activities,…
Descriptors: Classification, Earth Science, General Science, Geology
Ohio State Univ., Columbus. Agricultural Curriculum Materials Service. – 1990
This packet contains six science learning activities that can be used in agricultural education courses. The activities cover these topics: (1) determining the effects of soil drainage on plant growth and development; (2) determining the effect of soil compaction on plant growth and development; (3) inoculating legume seeds to promote nodule…
Descriptors: Agricultural Education, Classroom Techniques, Fertilizers, Higher Education
Blough, Glenn O.; Blackwood, Paul E. – Office of Education, Federal Security Agency, 1949
Every child today is in contact with the results of scientific discovery and should have at least some understanding of the principles of modern science. The increasing complexities of the age in which we live make this imperative. For this reason, the study of science has become an essential part of the curriculum of every elementary rural and…
Descriptors: Science Instruction, Teaching Methods, Science Activities, Interdisciplinary Approach